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    A computational investigation of iceberg capsize as a driver of explosive ice-shelf disintegration.

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    Guttenbergetal2011AnnGlacJason ...
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    Author
    Amundson, Jason M.
    Guttenberg, Nicolas
    Abbott, Dorian S.
    Burton, Justin C.
    Cathles, L. M.
    Macayeal, Douglas R.
    Zhang, Wendy W.
    Keyword
    Ice-shelf disintegration
    Ice-shelf collapse
    ice-shelf fragment capsize
    iceberg capsize
    Metadata
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    URI
    http://hdl.handle.net/11122/11310
    Abstract
    Potential energy released from the capsize of ice-shelf fragments (icebergs) is the immediate driver of the brief explosive phase of ice-shelf disintegration along the Antarctic Peninsula (e.g. the Larsen A, Larsen B and Wilkins ice shelves). The majority of this energy powers the rapidly expanding plume of ice-shelf fragments that expands outward into the open ocean; a smaller fraction of this energy goes into surface gravity waves and other dynamic interactions between ice and water that can sustain the continued fragmentation and break-up of the original ice shelf. As an initial approach to the investigation of ice-shelf fragment capsize in ice-shelf collapse, we develop a simple conceptual model involving ideal rectangular icebergs, initially in unstable or metastable orientations, which are assembled into a tightly packed mass that subsequently disassembles via massed capsize. Computations based on this conceptual model display phenomenological similarity to aspects of real ice-shelf collapse. A promising result of the conceptual model presented here is a description of how iceberg aspect ratio and its statistical variance, the two parameters related to ice-shelf fracture patterns, influence the enabling conditions to be satisfied by slow-acting processes (e.g. environmentally driven melting) that facilitate ice-shelf disintegration.
    Date
    2011
    Source
    Annals of Glaciology
    Publisher
    International Glaciology Society
    Type
    Article
    Peer-Reviewed
    Yes
    Citation
    Guttenberg, N., Abbot, D. S., Amundson, J. M., Burton, J. C., Mac Cathles, L., MacAYEAL, D. R., & Zhang, W. W. (2011). A computational investigation of iceberg capsize as a driver of explosive ice-shelf disintegration. Annals of glaciology, 52(59), 51-59.
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    Amundson, Jason M.

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